<div><p>Iron (Fe) uptake in graminaceous plant species occurs via the release and uptake of Fe-chelating compounds known as mugineic acid family phytosiderophores (MAs). In the MAs biosynthetic pathway, nicotianamine aminotransferase (NAAT) and deoxymugineic acid synthase (DMAS) enzymes catalyse the formation of 2’-deoxymugineic acid (DMA) from nicotianamine (NA). Here we describe the identification and characterisation of six <i>TaNAAT</i> and three <i>TaDMAS1</i> genes in bread wheat (<i>Triticum aestivum</i> L.). The coding sequences of all six <i>TaNAAT</i> homeologs consist of seven exons with ≥88.0% nucleotide sequence identity and most sequence variation present in the first exon. The coding sequences of the three <i>TaDMAS1</i> home...
Background: The release of phytosiderephores (PS) to the rhizosphere is the main root response to ir...
Iron is one of essential micronutrient for all organisms. Its deficiency 33 causes a severe loss in ...
Plant mechanisms responding to iron (Fe) deficiency have been widely described; it is well known tha...
Iron (Fe) uptake in graminaceous plant species occurs via the release and uptake of Fe-chelating com...
Iron (Fe) uptake in graminaceous plant species occurs via the release and uptake of Fe-chelating com...
Nicotianamine (NA) is a non-protein amino acid involved in fundamental aspects of metal uptake, tran...
A series of complex transport, storage and regulation mechanisms control iron metabolism and thereby...
Bread wheat (Triticum aestivum L.) is cultivated on more land than any other crop and produces a fif...
Conventional breeding efforts for iron (Fe) and zinc (Zn) biofortification of bread wheat (Triticum ...
Effective maintenance of plant iron (Fe) homoeostasis relies on a network of transcription factors (...
Iron is an essential micronutrient for all organisms. In crop plants, iron deficiency can decrease c...
Iron (Fe) is an essential element required for various cellular events in plants, including respirat...
Background: Nitrogen uptake and the efficient absorption and metabolism of nitrogen are essential el...
© 2015 Dr. Jamie Marcus Selby-PhamRice (Oryza sativa L.) and other graminaceous plant species secret...
Iron and zinc deficiencies negatively impact human health worldwide. We developed wheat lines that m...
Background: The release of phytosiderephores (PS) to the rhizosphere is the main root response to ir...
Iron is one of essential micronutrient for all organisms. Its deficiency 33 causes a severe loss in ...
Plant mechanisms responding to iron (Fe) deficiency have been widely described; it is well known tha...
Iron (Fe) uptake in graminaceous plant species occurs via the release and uptake of Fe-chelating com...
Iron (Fe) uptake in graminaceous plant species occurs via the release and uptake of Fe-chelating com...
Nicotianamine (NA) is a non-protein amino acid involved in fundamental aspects of metal uptake, tran...
A series of complex transport, storage and regulation mechanisms control iron metabolism and thereby...
Bread wheat (Triticum aestivum L.) is cultivated on more land than any other crop and produces a fif...
Conventional breeding efforts for iron (Fe) and zinc (Zn) biofortification of bread wheat (Triticum ...
Effective maintenance of plant iron (Fe) homoeostasis relies on a network of transcription factors (...
Iron is an essential micronutrient for all organisms. In crop plants, iron deficiency can decrease c...
Iron (Fe) is an essential element required for various cellular events in plants, including respirat...
Background: Nitrogen uptake and the efficient absorption and metabolism of nitrogen are essential el...
© 2015 Dr. Jamie Marcus Selby-PhamRice (Oryza sativa L.) and other graminaceous plant species secret...
Iron and zinc deficiencies negatively impact human health worldwide. We developed wheat lines that m...
Background: The release of phytosiderephores (PS) to the rhizosphere is the main root response to ir...
Iron is one of essential micronutrient for all organisms. Its deficiency 33 causes a severe loss in ...
Plant mechanisms responding to iron (Fe) deficiency have been widely described; it is well known tha...